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Frequency stabilization of diode laser to 1.637 μm based on the methane absorption line 被引量:1

Frequency stabilization of diode laser to 1.637 μm based on the methane absorption line
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摘要 The frequency of an external-cavity diode laser has been stabilized to 1.637 μm by using the reference of absorption lines of methane. The method can be applied to wavelength division multiplexed optical communication, fiber-optic sensing systems, as well as the high-sensitivity detection of methane. The derivative-like error signal yielded by frequency modulation and phase sensitivity detection technology is inputted into the PI feedback loop circuit in order to stabilize the frequency to the line center. After stabilization, the frequency fluctuation of diode laser is held within 5.6 MHz, and the root of Allan variance of error signal reaches a minimum of 1.66×10-10 for an average time of 10 s. The frequency of an external-cavity diode laser has been stabilized to 1.637 μm by using the reference of absorption lines of methane. The method can be applied to wavelength division multiplexed optical communication, fiber-optic sensing systems, as well as the high-sensitivity detection of methane. The derivative-like error signal yielded by frequency modulation and phase sensitivity detection technology is inputted into the PI feedback loop circuit in order to stabilize the frequency to the line center. After stabilization, the frequency fluctuation of diode laser is held within 5.6 MHz, and the root of Allan variance of error signal reaches a minimum of 1.66×10-10 for an average time of 10 s.
出处 《Chinese Optics Letters》 SCIE EI CAS CSCD 2004年第8期486-488,共3页 中国光学快报(英文版)
基金 This work was supported by the National Basic Research Priorities Programme (2002ccc02500).
关键词 Fiber optic sensors Frequency modulation Frequency stability METHANE Optical communication Wavelength division multiplexing Fiber optic sensors Frequency modulation Frequency stability Methane Optical communication Wavelength division multiplexing
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